Synaptic GABAA receptors are directly recruited from their extrasynaptic counterparts

被引:142
作者
Bogdanov, Yury
Michels, Guido
Armstrong-Gold, Cecilia
Haydon, Philip G.
Lindstrom, Jon
Pangalos, Menelas
Moss, Stephen J.
机构
[1] Univ Penn, Dept Neurosci, Philadelphia, PA 19104 USA
[2] UCL, Dept Pharmacol, London, England
[3] Univ Cologne, Dept Internal Med 3, Cologne, Germany
[4] Wyeth Res, Neurosci Discovery, Princeton, NJ USA
基金
英国惠康基金;
关键词
bungarotoxin binding site; endocytosis; exocytosis; GABA(A) receptor; inhibitory synaptic sites;
D O I
10.1038/sj.emboj.7601309
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
GABA(A) receptors mediate the majority of fast synaptic inhibition in the brain. The accumulation of these ligand-gated ion channels at synaptic sites is a prerequisite for neuronal inhibition, but the molecular mechanisms underlying this phenomenon remain obscure. To further understand these processes, we have examined the cellular origins of synaptic GABA(A) receptors. To do so, we have created fluorescent GABA(A) receptors that are capable of binding alpha-bungarotoxin (Bgt), facilitating the visualization of receptor endocytosis, exocytosis and delivery to synaptic sites. Imaging with Bgt in hippocampal neurons revealed that GABA(A) receptor endocytosis occurred exclusively at extrasynaptic sites, consistent with the preferential colocalization of extrasynaptic receptors with the AP2 adaptin. Receptor insertion into the plasma membrane was also predominantly extrasynaptic, and pulse-chase analysis revealed that these newly inserted receptors were then able to access directly synaptic sites. Therefore, our results demonstrate that synaptic GABA(A) receptors are directly recruited from their extrasynaptic counterparts. Moreover, they illustrate a dynamic mechanism for neurons to modulate GABA(A) receptor number at inhibitory synapses by controlling the stability of extrasynaptic receptors.
引用
收藏
页码:4381 / 4389
页数:9
相关论文
共 33 条
[1]   Distinct γ2 subunit domains mediate clustering and synaptic function of postsynaptic GABAA receptors and gephyrin [J].
Alldred, MJ ;
Mulder-Rosi, J ;
Lingenfelter, SE ;
Chen, G ;
Lüscher, B .
JOURNAL OF NEUROSCIENCE, 2005, 25 (03) :594-603
[2]   GABAA receptor cell surface number and subunit stability are regulated by the ubiquitin-like protein Plic-1 [J].
Bedford, FK ;
Kittler, JT ;
Muller, E ;
Thomas, P ;
Uren, JM ;
Merlo, D ;
Wisden, W ;
Triller, A ;
Smart, TG ;
Moss, SJ .
NATURE NEUROSCIENCE, 2001, 4 (09) :908-916
[3]   Regulation of AMPA receptor lateral movements [J].
Borgdorff, AJ ;
Choquet, D .
NATURE, 2002, 417 (6889) :649-653
[4]   GABAA receptor-associated protein regulates GABAA receptor cell-surface number in Xenopus laevis oocytes [J].
Chen, ZW ;
Chang, CSS ;
Leil, TA ;
Olcese, R ;
Olsen, RW .
MOLECULAR PHARMACOLOGY, 2005, 68 (01) :152-159
[5]   The role of receptor diffusion in the organization of the postsynaptic membrane [J].
Choquet, D ;
Triller, A .
NATURE REVIEWS NEUROSCIENCE, 2003, 4 (04) :251-265
[6]   Assembly and cell surface expression of heteromeric and homomeric gamma-aminobutyric acid type A receptors [J].
Connolly, CN ;
Krishek, BJ ;
McDonald, BJ ;
Smart, TG ;
Moss, SJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (01) :89-96
[7]   Cell surface stability of γ-aminobutyric acid type A receptors -: Dependence on protein kinase C activity and subunit composition [J].
Connolly, CN ;
Kittler, JT ;
Thomas, P ;
Uren, JM ;
Brandon, NJ ;
Smart, TG ;
Moss, SJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (51) :36565-36572
[8]   Decreased GABAA-receptor clustering results in enhanced anxiety and a bias for threat cues [J].
Crestani, F ;
Lorez, M ;
Baer, K ;
Essrich, C ;
Benke, D ;
Laurent, JP ;
Belzung, C ;
Fritschy, JM ;
Lüscher, B ;
Mohler, H .
NATURE NEUROSCIENCE, 1999, 2 (09) :833-839
[9]   Diffusion dynamics of glycine receptors revealed by single-quantum dot tracking [J].
Dahan, M ;
Lévi, S ;
Luccardini, C ;
Rostaing, P ;
Riveau, B ;
Triller, A .
SCIENCE, 2003, 302 (5644) :442-445
[10]   Association of gephyrin with synaptic and extrasynaptic GABAA receptors varies during development in cultured hippocampal neurons [J].
Danglot, L ;
Triller, A ;
Bessis, A .
MOLECULAR AND CELLULAR NEUROSCIENCE, 2003, 23 (02) :264-278